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20172025
most citedExploring the Mysteries of System-Level Test

47 citations · 52 across the 8 of their papers we have counts for

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6 papers · 1 filter

cs.ET20231 cited

Analysis of Optical Loss and Crosstalk Noise in MZI-based Coherent Photonic Neural Networks

Amin Shafiee, Sanmitra Banerjee, Krishnendu Chakrabarty +2

With the continuous increase in the size and complexity of machine learning models, the need for specialized hardware to efficiently run such models is rapidly growing. To address…

cs.ET2022

A Framework for Automated Correctness Checking of Biochemical Protocol Realizations on Digital Microfluidic Biochips

Sukanta Bhattacharjee, Ansuman Banerjee, Krishnendu Chakrabarty +1

Recent advances in digital microfluidic (DMF) technologies offer a promising platform for a wide variety of biochemical applications, such as DNA analysis, automated drug discovery…

cs.ET20223 cited

LoCI: An Analysis of the Impact of Optical Loss and Crosstalk Noise in Integrated Silicon-Photonic Neural Networks

Amin Shafiee, Sanmitra Banerjee, Krishnendu Chakrabarty +2

Compared to electronic accelerators, integrated silicon-photonic neural networks (SP-NNs) promise higher speed and energy efficiency for emerging artificial-intelligence applicatio…

cs.ET2021

Optimizing Coherent Integrated Photonic Neural Networks under Random Uncertainties

Sanmitra Banerjee, Mahdi Nikdast, Krishnendu Chakrabarty

We propose an optimization method to improve power efficiency and robustness in silicon-photonic-based coherent integrated photonic neural networks. Our method reduces the network…

cs.ET2020

Modeling Silicon-Photonic Neural Networks under Uncertainties

Sanmitra Banerjee, Mahdi Nikdast, Krishnendu Chakrabarty

Silicon-photonic neural networks (SPNNs) offer substantial improvements in computing speed and energy efficiency compared to their digital electronic counterparts. However, the ene…

cs.ET2017

Testing Microfluidic Fully Programmable Valve Arrays (FPVAs)

Chunfeng Liu, Bing Li, Bhargab B. Bhattacharya +3

Fully Programmable Valve Array (FPVA) has emerged as a new architecture for the next-generation flow-based microfluidic biochips. This 2D-array consists of regularly-arranged valve…